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Low-Temperature Nanocrystal Unification through Rotations and Relaxations Probed by in Situ Transmission Electron Microscopy

机译:通过原位透射电子显微镜探测的旋转和弛豫的低温纳米晶统一

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摘要

Through the mechanism of “oriented attachment”, small nanocrystals can fuse into a wide variety of one- and two-dimensional nanostructures. This fusion phenomenon is investigated in detail by low-temperature annealing of a two-dimensional array of 10 nm-sized PbSe nanocrystals, in situ in the transmission electron microscope. We have revealed a complex chain of processes; after coalescence, the connected nanocrystals undergo consecutive rotations in three-dimensional space, followed by drastic interfacial relaxations whereby full fusion is obtained.
机译:通过“取向附着”的机制,小纳米晶体可以融合成各种单维和二维纳米结构。通过在透射电子显微镜中的原位的10nm尺寸的PBSE纳米晶体的二维阵列的低温退火进行详细研究这种融合现象。我们透露了一个复杂的流程链;在聚结之后,连接的纳米晶体在三维空间中经历连续的旋转,然后进行剧烈的界面松弛,从而获得完全融合。

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